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Microbial degradation of polyfluoroalkyl chemicals in the environment: A review

机译:环境中多氟烷基化学品的微生物降解:综述

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Polyfluoroalkyl chemicals containing perfluoroalkyl moieties have been widely used in numerous industrial and commercial applications. Many polyfluoroalkyl chemicals are potential perfluoroalkyl acid (PFAA) precursors. When they are released to the environment, abiotic and microbial degradation of non-fluorinated functionalities, polyfluoroalkyl and perfluoroalkyl moieties can result in perfluoroalkyl carboxylic (PFCAs) and sulfonic acids (PFSAs), such as perfluorooctanoic acid (PFOA) and perfluorooctane sulfonic acid (PFOS). These highly persistent and ubiquitously detected PFAAs are the subjects of many regulations and actions due to their toxic profiles. In order to confidently evaluate the environmental fate and effects of these precursors and their links to PFSAs and PFCAs, we present the review into the environmental biodegradability studies carried out with microbial culture, activated sludge, soil and sediment in the past decade. First we propose that the knowledge gap caused by the lack of direct detection of precursor chemicals in environmental samples can be bridged by laboratory investigations of important precursors such as fluorotetomer-based compounds and perfluoroalkane sulfonamido derivatives. Then we evaluate the experimental setups and methodologies, sampling and sample preparation methods, and analytical techniques that have been successfully applied. Third, we provide the most updated knowledge on quantitative and qualitative relationships between precursors and PFSAs or PFCAs, microbial degradation path-ways, half-lives of precursors, defluorination potential, and novel degradation intermediates and products. In the end, we identify knowledge gaps and suggest research directions with regard to future biodegradation studies, environmental monitoring and ecotoxicological assessment of perfluoroalkyl and polyfluoroalkyl chemicals.
机译:含有全氟烷基部分的多氟烷基化学品已广泛用于许多工业和商业应用中。许多多氟烷基化学品是潜在的全氟烷基酸(PFAA)前体。当它们释放到环境中时,非氟化官能团,多氟烷基和全氟烷基部分的非生物和微生物降解会导致全氟烷基羧酸(PFCA)和磺酸(PFSA),例如全氟辛酸(PFOA)和全氟辛烷磺酸(PFOS) )。这些高度持久且无处不在的PFAA由于其毒性特征而成为许多法规和行动的主题。为了自信地评估这些前体的环境命运和影响以及它们与PFSA和PFCA的联系,我们对过去十年中用微生物培养,活性污泥,土壤和沉积物进行的环境生物降解性研究进行了综述。首先,我们提出可以通过对重要的前体(例如基于氟裂变物的化合物和全氟烷烃磺酰胺基衍生物)进行实验室研究来弥补由于缺乏对环境样品中前体化学物质的直接检测而导致的知识鸿沟。然后,我们评估已成功应用的实验装置和方法,采样和样品制备方法以及分析技术。第三,我们提供有关前体与PFSA或PFCA之间的定量和定性关系,微生物降解途径,前体的半衰期,脱氟潜能以及新型降解中间体和产品的最新知识。最后,我们确定了知识差距,并就未来的全氟烷基和多氟烷基化学品的生物降解研究,环境监测和生态毒理学评估提出了研究方向。

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